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血清白蛋白与嵌段共聚物胶束相互作用的生物物理特性分析。

Biophysical Characterization of Interactions between Serum Albumin and Block Copolymer Micelles.

机构信息

Department of Pharmaceutical Sciences, University of Illinois Chicago, Chicago, Illinois 60612, United States.

Department of Biomedical Engineering, University of Illinois Chicago, Chicago, Illinois 60607, United States.

出版信息

ACS Biomater Sci Eng. 2022 Jul 11;8(7):2899-2907. doi: 10.1021/acsbiomaterials.2c00016. Epub 2022 Jun 29.

Abstract

Block copolymer micelles have demonstrated great promise in the solubilization of hydrophobic drugs, but an understanding of the blood stability of the drug-laden micelles is needed for therapeutic advancement of micelle technologies. Following intravenous administration, mPEG-CL and mPEG-LA micelles have demonstrated quick release of their cargo and disassembly in blood, but the prevailing mechanisms of micelle disruption and key biomacromolecules driving this disruption have yet to be elucidated. Although protein interactions with solid polymeric nanoparticles have been characterized, not much is known regarding protein interactions with dynamic block copolymer micelles. Herein, we characterize the interaction of bovine and human serum albumins (BSA and HSA) with polymeric micelles, mPEG-CL and mPEG-LA, using protein fluorescence, isothermal titration calorimetry (ITC), and circular dichroism (CD) spectroscopy. We find that BSA and HSA have interactions with mPEG-CL, while only HSA is observed to weakly interact with mPEG-LA. Protein fluorescence suggests that binding of HSA to mPEG-CL and mPEG-LA is driven by electrostatic interactions. ITC suggests an interaction between serum albumin and mPEG-CL block copolymers driven by hydrogen bonding and electrostatic interactions in physiological MOPS-buffered saline, while mPEG-LA has no measurable interaction with either of the serum albumins. CD spectroscopy demonstrates that the protein secondary structure is intact in both proteins in the presence of mPEG-CL and mPEG-LA. Overall, BSA is not always predictive of polymeric interactions with HSA. Understanding of interactions between serum proteins and block copolymer micelles and the exact mechanisms of destabilization will direct the rational design of block copolymer systems for improving blood stability.

摘要

嵌段共聚物胶束在增溶疏水性药物方面表现出巨大的潜力,但为了推进胶束技术的治疗应用,需要了解载药胶束在血液中的稳定性。静脉注射后,mPEG-CL 和 mPEG-LA 胶束迅速释放其载药并在血液中解体,但胶束破坏的主要机制和驱动这种破坏的关键生物大分子尚未阐明。虽然已经对蛋白质与固体聚合物纳米颗粒的相互作用进行了表征,但对于蛋白质与动态嵌段共聚物胶束的相互作用知之甚少。在此,我们使用蛋白质荧光、等温滴定量热法(ITC)和圆二色性(CD)光谱法,表征了牛血清白蛋白(BSA)和人血清白蛋白(HSA)与聚合物胶束 mPEG-CL 和 mPEG-LA 的相互作用。我们发现 BSA 和 HSA 与 mPEG-CL 相互作用,而仅观察到 HSA 与 mPEG-LA 弱相互作用。蛋白质荧光表明 HSA 与 mPEG-CL 和 mPEG-LA 的结合是由静电相互作用驱动的。ITC 表明,在生理 MOPS 缓冲盐水中,白蛋白与 mPEG-CL 嵌段共聚物之间存在由氢键和静电相互作用驱动的相互作用,而 mPEG-LA 与两种血清白蛋白均无可测量的相互作用。CD 光谱表明,在 mPEG-CL 和 mPEG-LA 存在的情况下,两种蛋白质的二级结构均保持完整。总体而言,BSA 并不总是能够预测聚合物与 HSA 的相互作用。了解血清蛋白与嵌段共聚物胶束之间的相互作用以及确切的失稳机制,将指导用于提高血液稳定性的嵌段共聚物系统的合理设计。

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